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特定于主题的骨盆骨模型及其在骨水泥髋臼置换中的应用。

A subject-specific pelvic bone model and its application to cemented acetabular replacements.

机构信息

Mechanical Behaviour of Materials Laboratory, Department of Mechanical and Design Engineering, University of Portsmouth, Anglesea Building, Anglesea Road, Portsmouth PO13DJ, UK.

出版信息

J Biomech. 2010 Oct 19;43(14):2722-7. doi: 10.1016/j.jbiomech.2010.06.023. Epub 2010 Jul 23.

Abstract

A subject-specific three-dimensional finite element (FE) pelvic bone model has been developed and applied to the study of bone-cement interfacial response in cemented acetabular replacements. The pelvic bone model was developed from CT scan images of a cadaveric pelvis and validated against the experiment data obtained from the same specimen at a simulated single-legged stance. The model was then implanted with a cemented acetabular cup at selected positions to simulate some typical implant conditions due to the misplacement of the cup as well as a standard cup condition. For comparison purposes, a simplified FE model with homogeneous trabecular bone material properties was also generated and similar implant conditions were examined. The results from the homogeneous model are found to underestimate significantly both the peak von Mises stress and the area of the highly stressed region in the cement near the bone-cement interface, compared with those from the subject-specific model. Non-uniform cement thickness and non-standard cup orientation seem to elevate the highly stressed region as well as the peak stress near the bone-cement interface.

摘要

已经开发了一种特定于主体的三维有限元(FE)骨盆模型,并将其应用于研究骨水泥界面在骨水泥髋臼置换中的反应。骨盆模型是从尸体骨盆的 CT 扫描图像中开发出来的,并针对从同一标本在模拟单腿站立时获得的实验数据进行了验证。然后,将骨盆模型植入选定位置的骨水泥髋臼杯,以模拟由于髋臼杯位置不当以及标准髋臼杯条件而导致的一些典型植入情况。为了进行比较,还生成了一个具有均匀小梁骨材料特性的简化 FE 模型,并检查了类似的植入情况。与特定于主体的模型相比,均匀模型的结果发现显著低估了靠近骨水泥界面的水泥中峰值 von Mises 应力和高应力区域的面积。不均匀的水泥厚度和非标准的杯体方向似乎会升高靠近骨水泥界面的高应力区域和峰值应力。

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